We study the quantum error correction properties of the black hole interior in a toy model for an evaporating black hole: Jackiw-Teitelboim gravity entangled with a non-gravitational bath. After the Page time, the black hole interior degrees of freedom in this system are encoded in the bath Hilbert space. We use the gravitational path integral to show that the interior density matrix is correctable against the action of quantum operations on the bath which (i) do not have prior access to details of the black hole microstates, and (ii) do not have a large, negative coherent information with respect to the maximally mixed state on the bath, with the lower bound controlled by the black hole entropy and code subspace dimension. Thus, the encodi...
In this thesis, we take a look at how quantum information theory can be used to study physical syste...
We show that complementary state-specific reconstruction of logical (bulk) operators is equivalent t...
In this thesis, we take a look at how quantum information theory can be used to study physical syste...
Abstract We study the quantum error correction properties of the black hole interior in a toy model ...
This article reviews the progress in our understanding of the reconstruction of the bulk spacetime i...
The non-isometric holographic model of the black hole interior stands out as a potential resolution ...
We reconsider the black hole firewall puzzle, emphasizing that quantum error- correction, computatio...
We reconsider the black hole firewall puzzle, emphasizing that quantum error- correction, computatio...
It was recently argued in [1] that black hole complementarity strains the basic rules of quantum inf...
Recently, a non-isometric holographic model of the black hole interior \cite{Akers:2022qdl} was prop...
The unitary evaporation of black holes enables the potential retrieval of information from Hawking r...
We revisit the model of an AdS$_2$ black hole in JT gravity evaporating into an external bath. We st...
We study Python's lunch geometries in the two-dimensional Jackiw-Teitelboim model coupled to a massl...
We review recent developments in Jackiw-Teitelboim (JT) gravity. This is a simple solvable model of ...
This article reviews the progress in our understanding of the reconstruction of the bulk spacetime i...
In this thesis, we take a look at how quantum information theory can be used to study physical syste...
We show that complementary state-specific reconstruction of logical (bulk) operators is equivalent t...
In this thesis, we take a look at how quantum information theory can be used to study physical syste...
Abstract We study the quantum error correction properties of the black hole interior in a toy model ...
This article reviews the progress in our understanding of the reconstruction of the bulk spacetime i...
The non-isometric holographic model of the black hole interior stands out as a potential resolution ...
We reconsider the black hole firewall puzzle, emphasizing that quantum error- correction, computatio...
We reconsider the black hole firewall puzzle, emphasizing that quantum error- correction, computatio...
It was recently argued in [1] that black hole complementarity strains the basic rules of quantum inf...
Recently, a non-isometric holographic model of the black hole interior \cite{Akers:2022qdl} was prop...
The unitary evaporation of black holes enables the potential retrieval of information from Hawking r...
We revisit the model of an AdS$_2$ black hole in JT gravity evaporating into an external bath. We st...
We study Python's lunch geometries in the two-dimensional Jackiw-Teitelboim model coupled to a massl...
We review recent developments in Jackiw-Teitelboim (JT) gravity. This is a simple solvable model of ...
This article reviews the progress in our understanding of the reconstruction of the bulk spacetime i...
In this thesis, we take a look at how quantum information theory can be used to study physical syste...
We show that complementary state-specific reconstruction of logical (bulk) operators is equivalent t...
In this thesis, we take a look at how quantum information theory can be used to study physical syste...